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ADP1055ACPZ-R7 датащи(PDF) 64 Page - Analog Devices |
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ADP1055ACPZ-R7 датащи(HTML) 64 Page - Analog Devices |
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64 / 140 page ![]() ADP1055 Data Sheet Rev. A | Page 64 of 140 VOUT_TRIM The VOUT_TRIM command applies a fixed offset voltage to the VOUT_COMMAND value. Table 25. Register 0x22—VOUT_TRIM Bits Bit Name R/W Description [15:0] Offset trim R/W Twos complement integer used to apply a fixed offset voltage to the VOUT_COMMAND value. VOUT_CAL_OFFSET The VOUT_CAL_OFFSET command is used to apply a fixed offset voltage to the VOUT_COMMAND value. Table 26. Register 0x23—VOUT_CAL_OFFSET Bits Bit Name R/W Description [15:0] Offset trim R/W Twos complement integer used to apply a fixed offset voltage to the VOUT_COMMAND value. VOUT_MAX The VOUT_MAX command sets an upper limit on the output voltage. Exponent N is set using VOUT_MODE[4:0]. Table 27. Register 0x24—VOUT_MAX Bits Bit Name R/W Description [15:0] Mantissa-Y R/W Sets the output voltage upper limit. 16-bit unsigned integer Y value for linear data format (V = Y × 2N). VOUT_TRANSITION_RATE When the device receives a VOUT_COMMAND or OPERATION command that causes the output voltage to change, this command sets the output transition rate (or slew rate), in mV/μs, at which the VS± pins change voltage. Table 28. Register 0x27—VOUT_TRANSITION_RATE Bits Bit Name R/W Description [15:11] Exponent-N R/W Twos complement N-exponent used in linear data format (X = Y × 2N). [10:0] Mantissa-Y R/W Twos complement Y-mantissa used in linear data format (X = Y × 2N). VOUT_DROOP The VOUT_DROOP command sets the rate, in mV/A, at which the output voltage decreases (or increases) with increasing (or decreasing) output current. Table 29. Register 0x28—VOUT_DROOP Bits Bit Name R/W Description [15:11] Exponent-N R/W Twos complement N-exponent used in linear data format (X = Y × 2N). [10:0] Mantissa-Y R/W Twos complement Y-mantissa used in linear data format (X = Y × 2N). VOUT_SCALE_LOOP The VOUT_SCALE_LOOP command sets the gain (KR) by which the commanded voltage (VOUT) is scaled to generate the internal reference voltage (VREF). VREF = VOUT × KR, where KR = Y × 2N. Table 30. Register 0x29—VOUT_SCALE_LOOP Bits Bit Name R/W Description [15:11] Exponent-N R/W Twos complement N-exponent used in linear data format (X = Y × 2N). [10:0] Mantissa-Y R/W Twos complement Y-mantissa used in linear data format (X = Y × 2N). VOUT_SCALE_MONITOR The VOUT_SCALE_MONITOR command sets the gain (KVOUT) by which the sensed output voltage at the DUT (VOUT_DUT) is scaled to generate the reading for the READ_VOUT command. READ_VOUT = VOUT_DUT × KVOUT, where KVOUT = Y × 2N. Table 31. Register 0x2A—VOUT_SCALE_MONITOR Bits Bit Name R/W Description [15:11] Exponent-N R/W Twos complement N-exponent used in linear data format (X = Y × 2N). [10:0] Mantissa-Y R/W Twos complement Y-mantissa used in linear data format (X = Y × 2N). |
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